首页> 外文期刊>Journal of Radioanalytical and Nuclear Chemistry: An International Journal Dealing with All Aspects and Applications of Nuclear Chemistry >Improving accuracy, precision, detection limits, and sample throughput in prompt gamma-ray activation analysis using cold and thermal neutrons and element ratios
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Improving accuracy, precision, detection limits, and sample throughput in prompt gamma-ray activation analysis using cold and thermal neutrons and element ratios

机译:使用冷和热中子和元素比例提高提示伽马射线激活分析中的精度,精度,检测限,以及采样吞吐量

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摘要

A combination of thermal neutron (TN) and cold neutron (CN) prompt gamma-ray activation analysis (PGAA) has been used to lower analytical bias, to improve precision and detection limits, and to reduce sample throughput time. CNPGAA was used to measure element ratios relative to a comparator element, while TNPGAA was used to measure the comparator element. Low-Z elements with normally poor sensitivity (C, N, and S) were measured with expanded uncertainties of2% in coal and fuel oil using H as comparator element. Using the combined method, measurements can be made with good counting statistics in a fraction of the time needed for TNPGAA alone, with a 20-30-fold improvement in detection limits.
机译:热中子(TN)和冷中子(CN)提示伽马射线激活分析(PGAA)的组合用于降低分析偏压,以提高精度和检测限制,并降低样品吞吐量。 CNPGAA用于测量相对于比较元件的元素比,而TNPGAA用于测量比较器元件。 使用H作为比较器元件的煤和燃料油中的膨胀不确定因子测量具有通常较差的敏感性(C,N和S)的低Z元素。 使用组合方法,可以在单独的TNPGAA所需的时间一小部分中具有良好的计数统计测量,检测限增加20-30倍。

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